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热量限制对热休克蛋白70表达及热休克转录因子1激活的影响。

Effect of caloric restriction on the expression of heat shock protein 70 and the activation of heat shock transcription factor 1.

作者信息

Heydari A R, You S, Takahashi R, Gutsmann A, Sarge K D, Richardson A

机构信息

Geriatric Research, Education and Clinical Center, Audie L. Murphy Memorial Veterans Hospital, San Antonio, TX 78284, USA.

出版信息

Dev Genet. 1996;18(2):114-24. doi: 10.1002/(SICI)1520-6408(1996)18:2<114::AID-DVG4>3.0.CO;2-C.

Abstract

The regulation of heat shock protein 70 (hsp70) expression is an excellent example of a cellular mechanism that has evolved to protect all living organisms from various types of physiological stresses; therefore, the reported age-related alterations in the ability of cells to express hsp70 in response to stress could seriously compromise the ability of a senescent organism in respond to changes in its environment. Because caloric restriction (CR) is the only experimental manipulation known to retard aging and increase the survival of rodents, it was of interest to analyze the effect of CR on the age-related alteration in the induction of hsp70 expression in rat hepatocytes. The effect of CR on the nuclear transcription of hsp70 gene in rat hepatocytes in response to various levels of heat shock was determined, and it was found that the age-related decline in the transcription of hsp70 at all temperatures studied was reversed by CR. Because the heat shock transcription factor (HSF) mediates the heat-induced transcription of hsp70, the effect of CR on the induction of HSF binding activity by heat shock was studied and found to arise from HSF1, which has been shown to be involved in the induction of HSF binding activity in other cell types. The age-related decrease in the induction of HSF1 binding activity in rat hepatocytes was reversed by CR, and did not appear to be due to an accumulation of inhibitory molecules with age. Interestingly, the level of HSF1 protein was significantly higher in hepatocytes isolated from old rats fed ad libitum compared to hepatocytes obtained from rats fed the CR diet even though the levels of HSF1 binding activity were lower for hepatocytes isolated from the old rats fed ad libitum. The levels of the mRNA transcript for HSF1 was not significantly altered by age or CR. Thus, the changes in HSF1 binding activity with age and CR do not arise from changes in the level of HSF1 protein available for activation.

摘要

热休克蛋白70(hsp70)表达的调控是一种细胞机制的绝佳范例,这种机制已经进化出来以保护所有生物体免受各种类型的生理应激;因此,所报道的细胞对应激表达hsp70能力的与年龄相关的改变可能会严重损害衰老生物体应对其环境变化的能力。由于热量限制(CR)是已知的唯一能延缓衰老并提高啮齿动物存活率的实验性操作,分析CR对大鼠肝细胞中hsp70表达诱导的与年龄相关改变的影响就变得很有意义。确定了CR对大鼠肝细胞中hsp70基因在不同程度热休克下核转录的影响,结果发现,在所研究的所有温度下,hsp70转录与年龄相关的下降都被CR逆转了。因为热休克转录因子(HSF)介导hsp70的热诱导转录,所以研究了CR对热休克诱导HSF结合活性的影响,发现这种影响源自HSF1,HSF1已被证明在其他细胞类型中参与HSF结合活性的诱导。CR逆转了大鼠肝细胞中HSF1结合活性诱导与年龄相关的下降,且这似乎不是由于随着年龄增长抑制分子的积累所致。有趣的是,与从喂食CR饮食的大鼠获得的肝细胞相比,从自由进食的老年大鼠分离的肝细胞中HSF1蛋白水平显著更高——尽管从自由进食的老年大鼠分离的肝细胞中HSF1结合活性水平更低。HSF1的mRNA转录本水平不受年龄或CR的显著影响。因此,HSF1结合活性随年龄和CR的变化并非源于可用于激活的HSF1蛋白水平的变化。

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